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新西兰湿地中微生物群落的垂直分布及预测代谢途径,以及环境 DNA 作为湿地状况指标的潜力。

Vertical distribution of prokaryotes communities and predicted metabolic pathways in New Zealand wetlands, and potential for environmental DNA indicators of wetland condition.

机构信息

Manaaki Whenua-Landcare Research, Lincoln, New Zealand.

Manaaki Whenua-Landcare Research, Hamilton, New Zealand.

出版信息

PLoS One. 2021 Jan 6;16(1):e0243363. doi: 10.1371/journal.pone.0243363. eCollection 2021.

Abstract

Globally, wetlands are in decline due to anthropogenic modification and climate change. Knowledge about the spatial distribution of biodiversity and biological processes within wetlands provides essential baseline data for predicting and mitigating the effects of present and future environmental change on these critical ecosystems. To explore the potential for environmental DNA (eDNA) to provide such insights, we used 16S rRNA metabarcoding to characterise prokaryote communities and predict the distribution of prokaryote metabolic pathways in peats and sediments up to 4m below the surface across seven New Zealand wetlands. Our results reveal distinct vertical structuring of prokaryote communities and metabolic pathways in these wetlands. We also find evidence for differences in the relative abundance of certain metabolic pathways that may correspond to the degree of anthropogenic modification the wetlands have experienced. These patterns, specifically those for pathways related to aerobic respiration and the carbon cycle, can be explained predominantly by the expected effects of wetland drainage. Our study demonstrates that eDNA has the potential to be an important new tool for the assessment and monitoring of wetland health.

摘要

全球范围内,由于人为改造和气候变化,湿地正不断减少。了解湿地内生物多样性和生物过程的空间分布情况,为预测和减轻当前及未来环境变化对这些关键生态系统的影响提供了重要的基准数据。为了探索环境 DNA (eDNA) 提供这些见解的潜力,我们使用 16S rRNA 代谢组学来描述古菌群落,并预测在新西兰七个湿地中,深度达 4 米以下的泥炭和沉积物中,古菌代谢途径的分布情况。我们的研究结果揭示了这些湿地中古菌群落和代谢途径的明显垂直结构。我们还发现了某些代谢途径相对丰度差异的证据,这些差异可能与湿地经历的人为改造程度相对应。这些模式,特别是与有氧呼吸和碳循环相关的途径,可以主要通过湿地排水的预期影响来解释。我们的研究表明,eDNA 有可能成为评估和监测湿地健康的一种重要新工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e52/7787371/9b625c767818/pone.0243363.g001.jpg

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